Spin frame transformations and Dirac equations [PDF]
R. Noris, L. Fatibene
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Helical beams of electrons in a magnetic field: new analytic solutions of the Schrödinger and Dirac equations [PDF]
Iwo Białynicki‐Birula +1 more
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RNA‐centric world of retroviruses: unravelling the molecular strategies of genomic RNA packaging
ABSTRACT Retroviruses constitute a unique group of RNA viruses that have profoundly influenced both evolutionary trajectories and biomedical research. Their ability to reverse transcribe and integrate into host genomes has shaped genomic architecture across species and contributed to our understanding of oncogenes, gene regulation, and RNA biology ...
Mohammad Abdullah Jehad +5 more
wiley +1 more source
Solutions to the Dirac Equation in Kerr-Newman Geometries including the black-hole region [PDF]
Christoph Krpoun, Olaf Müller
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Photothermal CO2 Hydrogenation: Reactions, Mechanisms, and Catalyst Design
Reactions, mechanisms, and catalyst design for photothermal CO2 hydrogenation. ABSTRACT Photothermal CO2 hydrogenation has attracted extensive attention because it provides a green and sustainable approach to fuel and chemicals production. The photothermal catalyst plays a critical role in CO2 conversion through a range of reactions.
Shuai Yan +15 more
wiley +1 more source
Long range scattering for the cubic Dirac equation on $\mathbf{R}^{1+1}$ [PDF]
Timothy Candy, Hans Lindblad
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Charge conjugation approach to scattering for the Hartree type Dirac equations with chirality [PDF]
Yonggeun Cho +2 more
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Structure‐Function Tailoring of Plasmonic Nanomaterials for Thin‐Film Photovoltaics
This review discusses the mechanisms and recent advancements of plasmonics in achieving effective light management to enhance the performance of thin‐film solar cells. It highlights applications in high‐performance perovskite solar cells and future‐oriented tandem solar cells.
Sen Jiang +14 more
wiley +1 more source
A Method for Deriving the Dirac Equation from the Relativistic Newton's Second Law [PDF]
H. Y. Cui
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Bond and Antibond Resonances: A Unified Framework for Singlet Biradical Character
The electronic structure of a variety of singlet biradicaloids may be described in the Lewis picture using single antibonds as the central bonding motif. In conjunction with a consistent set of biradical indicators, we can resolve some long‐standing disputes over the biradical character of molecules such as O3 and S2N2.
Daniel T. Gschwind, Jonas Bresien
wiley +1 more source

